English

Guaranteeing Timed Opacity using Parametric Timed Model Checking

Cryptography and Security 2022-10-05 v1 Formal Languages and Automata Theory Logic in Computer Science

Abstract

Information leakage can have dramatic consequences on systems security. Among harmful information leaks, the timing information leakage occurs whenever an attacker successfully deduces confidential internal information. In this work, we consider that the attacker has access (only) to the system execution time. We address the following timed opacity problem: given a timed system, a private location and a final location, synthesize the execution times from the initial location to the final location for which one cannot deduce whether the system went through the private location. We also consider the full timed opacity problem, asking whether the system is opaque for all execution times. We show that these problems are decidable for timed automata (TAs) but become undecidable when one adds parameters, yielding parametric timed automata (PTAs). We identify a subclass with some decidability results. We then devise an algorithm for synthesizing PTAs parameter valuations guaranteeing that the resulting TA is opaque. We finally show that our method can also apply to program analysis.

Keywords

Cite

@article{arxiv.2206.05438,
  title  = {Guaranteeing Timed Opacity using Parametric Timed Model Checking},
  author = {Étienne André and Didier Lime and Dylan Marinho and Jun Sun},
  journal= {arXiv preprint arXiv:2206.05438},
  year   = {2022}
}

Comments

This is the author version of the manuscript of the same name published in ACM Transactions on Software Engineering and Methodology (ToSEM). This work is partially supported by the ANR national research program PACS (ANR-14-CE28-0002), by the ANR-NRF research program ProMiS (ANR-19-CE25-0015), and by ERATO HASUO Metamathematics for Systems Design Project (No. JPMJER1603), JST. arXiv admin note: substantial text overlap with arXiv:1907.00537